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Stabilization and circuit implementation of a novel chemical oscillating chaotic system

Li Xiong (School of Physics and Electromechanical Engineering, He’xi University, Zhangye, China and Fudan University, Shanghai, China)
Wanjun Yin (Xidian University, Xian, China)
Xinguo Zhang (Lan’zhou University, Lan’zhou, China)

Circuit World

ISSN: 0305-6120

Article publication date: 7 May 2019

Issue publication date: 21 June 2019

109

Abstract

Purpose

This paper is aimed at investigating a novel chemical oscillating chaotic system with different attractors at fixed parameters. The typical dynamical behavior of the new chemical oscillating system is discussed, and it is found that the state selection is dependent on initial values. Then, the stabilization problem of the chemical oscillating attractors is investigated analytically and numerically. Subsequently, the novel electronic circuit of the proposed chemical oscillating chaotic system are constructed, and the influences of the changes of circuit parameters on chemical oscillating chaotic attractors are investigated.

Design/methodology/approach

The different attractors of the novel chemical oscillating chaotic system are investigated by changing the initial values under fixed parameters. Moreover, the active control and adaptive control methods are presented to make the chemical oscillating chaotic systems asymptotically stable at the origin based on the Lyapunov stability theory. The influences on chemical oscillating chaotic attractors are also verified by changing the circuit parameters.

Findings

It is found that the active control method is easier to be realized by using physical components because of its less control signal and lower cost. It is also confirmed that the adaptive control method enjoys strong anti-interference ability because of its large number of selected controllers. What can be seen from the simulation results is that the chaotic circuits are extremely dependent on circuit parameters selection. Comparisons between MATLAB simulations and Multisim simulation results show that they are consistent with each other and demonstrate that changing attractors of the chemical oscillating chaotic system exist. It is conformed that circuit parameters selection can be effective to control and realize chaotic circuits.

Originality/value

The different attractors of the novel chemical oscillating chaotic system are investigated by changing the initial values under fixed parameters. The characteristic of the chemical oscillating attractor is that the basin of attraction of the three-dimensional attractor is located in the first quadrant of the eight quadrants of the three-dimensional space, and the ranges of the three variables are positive. This is because the concentrations of the three chemical substances are all positive.

Keywords

Acknowledgements

Competing interests: The authors have declared that no conflicting interests exist.

Funding: The authors are greatly thankful for the help and support from the Open Project of State Key Laboratory of ASIC & System (Grant No. 2018KF001).

Citation

Xiong, L., Yin, W. and Zhang, X. (2019), "Stabilization and circuit implementation of a novel chemical oscillating chaotic system", Circuit World, Vol. 45 No. 2, pp. 93-106. https://doi.org/10.1108/CW-12-2018-0108

Publisher

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Emerald Publishing Limited

Copyright © 2019, Emerald Publishing Limited

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